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首页> 外文期刊>Journal of Materials Science >Formation of feathery grains with the application of a static magnetic field during direct chill casting of Al-9.8wt%Zn alloy
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Formation of feathery grains with the application of a static magnetic field during direct chill casting of Al-9.8wt%Zn alloy

机译:Al-9.8wt%Zn合金直接冷铸过程中施加静磁场形成羽毛状晶粒

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摘要

Effect of a 0.2-T static magnetic field on the microstructure of a direct chill cast Al-9.8wt%Zn alloy slab was investigated. The static magnetic field transferred the microstructure from a mixture of equiaxed and columnar grains with the primary trunks growing in directions to twinned lamellar feathery grains with the primary and secondary arms growing in directions. The application of the static magnetic field results in the reduction of the heat discharge and solute mixing capacity through a damping effect on convection and thus a delay of the melt transformation to solid and a request to reduce the liquid/solid interface energy through reducing the interface area due to the loss of undercooling. The delay and the request account for the growth direction change and the formation of lamellas. The difference between the Al and Zn atomic radii and the related incoming flow facilitate the formation of the twins.
机译:研究了0.2-T静磁场对直接冷铸Al-9.8wt%Zn合金板坯组织的影响。静磁场将微观结构从等轴和柱状晶粒的混合物(主干沿方向生长)转移到孪生的层状羽状晶粒,而主臂和次要臂则沿方向生长。静磁场的施加通过对流的阻尼作用导致散热和溶质混合能力的降低,从而延迟了熔体转化为固体的过程,并要求通过减少界面来降低液/固界面能区域由于过冷的损失。延迟和要求说明了生长方向的变化和薄片的形成。 Al和Zn原子半径之间的差异以及相关的进入流量促进了孪晶的形成。

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